IP Library › Granted Patent US 11,990,892
Granted Patent B2
US 11,990,892 · App. 17/449,148 · Granted May 21, 2024

Acoustic wave device with transverse spurious mode suppression

Inventors: Yuhao Liu (Irvine, CA); Jiansong Liu (Irvine, CA); Chun Sing Lam (San Jose, CA)
Assignee: Skyworks Solutions, Inc.
H03H9/54H03H9/02834H03H9/02992H03H9/64H03H9/725
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Quick Facts
Patent No.
US 11,990,892
App. No.
17/449,148
Granted
May 21, 2024
Kind
B2
Abstract

An acoustic wave device with a bent section is disclosed. The acoustic wave device includes a piezoelectric layer and an interdigital transducer electrode on the piezoelectric layer. The bent section is arranged to create a curvature in a waveguide of the acoustic wave device to suppress a transverse spurious mode of the acoustic wave device.

Claims (28)

1. An acoustic wave device comprising:

a piezoelectric layer; and

an interdigital transducer electrode on the piezoelectric layer, the interdigital transducer electrode including a bent section arranged to create a curvature in an acoustic aperture of the acoustic wave device to suppress a transverse mode of the acoustic wave device, and the acoustic aperture having substantially the same width throughout the bent section.

2. The acoustic wave device of claim 1 wherein the interdigital transducer electrode includes a bus bar and fingers in the bent section extending from the bus bar, the fingers in the bent section including inner fingers positioned between two outer fingers, and the bent section having a bend angle between intersecting lines extending from outer edges of the two outer fingers.

3. The acoustic wave device of claim 2 wherein the bend angle is in a range from 1° to 20°.

4. The acoustic wave device of claim 2 wherein the bend angle is in a range from 10° to 20°.

5. The acoustic wave device of claim 1 further comprising a temperature compensation layer over the interdigital transducer electrode.

6. The acoustic wave device of claim 5 wherein the piezoelectric layer includes lithium niobate.

7. The acoustic wave device of claim 1 further comprising a piston mode structure.

8. An acoustic wave device comprising:

a piezoelectric layer;

an interdigital transducer electrode on the piezoelectric layer, the interdigital transducer electrode including a bus bar and fingers extending from the bus bar, the interdigital transducer electrode including a bent section creating a curvature in an acoustic aperture of the acoustic wave device to suppress a transverse mode of the acoustic wave device, and the acoustic aperture having substantially the same width throughout the bent section; and

a piston mode structure.

9. The acoustic wave device of claim 8 wherein the fingers include inner fingers in the bent section positioned between two outer fingers in the bent section, and the bent section has a bend angle between intersecting lines extending from outer edges of the two outer fingers.

10. The acoustic wave device of claim 9 wherein the bend angle is in a range from 1° to 20°.

11. The acoustic wave device of claim 9 wherein the bend angle is in a range from 10° to 20°.

12. The acoustic wave device of claim 8 wherein the piston mode structure includes an end portion of at least one of the fingers, and the end portion includes wider metal than other portions of the at least one of the fingers.

13. The acoustic wave device of claim 8 wherein the piston mode structure includes an end portion of at least one of the fingers, and the end portion includes thicker metal than other portions of the at least one of the fingers.

14. The acoustic wave device of claim 8 wherein the piston mode structure includes an oxide over an end portion of at least one of the fingers.

15. The acoustic wave device of claim 8 wherein the piston mode structure includes a trench in a dispersion adjustment layer over the interdigital transducer electrode.

16. The acoustic wave device of claim 8 wherein the bus bar includes an arcuate section and a straight section.

17. The acoustic wave device of claim 8 further comprising a temperature compensation layer over the interdigital transducer electrode, and the acoustic wave device is configured to generate a surface acoustic wave.

18. The acoustic wave device of claim 8 further comprising a carrier substrate, the piezoelectric layer positioned over the carrier substrate.

19. The acoustic wave device of claim 8 wherein all fingers of the fingers that are in the bent section have substantially the same length.

20. A wireless communication device comprising:

an acoustic wave filter including an acoustic wave resonator, the acoustic wave resonator including a piezoelectric layer, an interdigital transducer electrode on the piezoelectric layer, and a piston mode structure, the interdigital transducer electrode including a bent section creating a curvature in an acoustic aperture of the acoustic wave resonator to suppress a transverse m ode of the acoustic wave resonator, and the acoustic aperture having substantially the same width throughout the bent section; and

an antenna in communication with the acoustic wave filter.

21. The wireless communication device of claim 20 wherein the wireless communication device is a mobile phone.

Continuity (4)
Continuation 16700947 · Dec 2, 2019
Provisional Application 62774734 · Dec 3, 2018
Provisional Application 62774762 · Dec 3, 2018
Related Publication 20220014177A1 · Jan 13, 2022
Cited By (2)
US 12,592,678 US 12,695,438